$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

[국내논문] 제주도 일대 습지에 서식하는 저서성 대형무척추동물의 군집 분포 특성
Spatial Distribution of Benthic Macroinvertebrate Assemblages in Wetlands of Jeju Island, Korea

생태와 환경 = Korean journal of ecology and environment, v.57 no.1, 2024년, pp.1 - 16  

전영철 ((주)생태자원연구소) ,  천승필 (SOKN생태보전연구소 (주)) ,  강미숙 (SOKN생태보전연구소 (주)) ,  박재흥 ((주)생태자원연구소) ,  이창수 (국립생태원 습지연구팀) ,  권순직 ((주)애일)

초록
AI-Helper 아이콘AI-Helper

습지는 생태적 중요성과 경제적 가치에도 불구하고 인간의 과도한 이용으로 인하여 교란받고 있을 뿐만 아니라 유수생태계인 하천에 비하여 습지 연구는 상대적으로 적다. 본 연구는 아열대 기후의 제주도에 분포하는 중·소형 습지 50개소를 대상으로 저서성 대형무척추동물 군집 특성과 주요 종의 분포 특성을 알아보기 위하여 2021년 현장조사를 실시하였다, 현장조사는 국립생태원의 "내륙습지 조사지침(2020)"에 따라 수행되었다. 조사기간 동안 출현한 저서성 대형무척추동물은 총 3문 5강 19목 53과 133종이었다. 습지별 출현종수는 4~31종의 범위였으며 평균 17.5종이 출현하였다. 포식성 곤충인 잠자리목과 노린재목, 딱정벌레목의 세 분류군은 출현종수와 개체밀도가 각각 전체의 67.7%와 68.2%를 차지하였는데, 특히 딱정벌레목의 구성비가 가장 높았다. 한편, 국가습지 유형분류체계에 따른 습지 유형별 출현종수와 개체밀도는 통계적으로 유의미한 차이가 없었다. 본 연구를 통하여 멸종위기 야생생물은 기수갈고둥과 물장군, 물방개의 총 3종이 확인되었으며 큰무늬왕잠자리를 비롯하여 제주도 내에만 국지적으로 분포하는 다수의 종이 기록되었다. 전체 대상 습지는 저서성 대형무척추동물 군집의 유사성에 따라 5개의 그룹으로 세분되었으며 각 그룹은 습지면적과 세립질 입자의 구성비, 습지 장축 길이, 수생식물 구성비의 항목에서 통계적으로 유의미한 차이를 보였다. 지표종분석(ISA) 결과에서 총 19종의 지표종이 선정되었는데, 노란실잠자리는 지표값이 63%로 가장 높았으며 그 다음으로 자색물방개와 깔따구류의 순이었다. 습지 환경과 생물 자료를 지속적으로 축적한다면 지표종의 환경변화에 따른 반응을 보다 객관적으로 제시할 수 있으며 습지생태계의 현재 상태를 평가하고 관리하기 위한 생물학적 지표 개발에 적용이 가능할 것이다. 본 연구 결과는 중·소형 습지에 대한 저서성 대형무척추동물의 생물다양성과 서식환경에 대한 정보를 제공하고 향후 습지 보전과 복원을 위한 기초자료로 활용되기를 기대한다.

Abstract AI-Helper 아이콘AI-Helper

Most wetlands worldwide have suffered from extensive human exploitation. Unfortunately they have been less explored compared to river and lake ecosystems despite their ecological importance and economic values. This is the same case in Korea. This study was aimed to estimate the assemblage attribute...

주제어

참고문헌 (77)

  1. Allan, J.D. and M.M. Castillo. 2007. Sream Ecology: Structure?and Function of Running Waters. Second edition. Springer?Science & Business Media, Dordrecht, The Netherlands. 

  2. Attrill, J.J., J.A. Strong and A.A. Rowden. 2000. Are macroinvertebrate communities influenced by seagrass structural?complexity? Ecography 23: 114-121. 

  3. Bae, Y.J., S.I. Jo, D.H. Hoang, H.G. Lee and K.B. Na. 2004. Biodiversity and community composition of benthic macroinvertebrates from Upo wetlands in Korea. Korean Journal?of Environment and Ecology 18: 75-91. 

  4. Beyene, A., T. Addis, D. Kifle, W. Legesse, H. Kloos and L. Triest. 2009. Comparative study of diatoms and macroinvertebrates as indicators of severe water pollution: Case study?of the Kebena and Akaki rivers in Addis Ababa, Ethiopia.?Ecological Indicators 9: 381-392. 

  5. Bogut, I., J. Vidakovic, G. Palijan and D. Cerba. 2007. Benthic?macroinvertbrates associated with four species of macrophytes. Biologia 62: 600-606. 

  6. Brraich, O.S. and R. Kaur. 2017. Temporal composition and distribution of benthic macroinvertebrates in wetlands. Current?Science 112: 116-125. 

  7. Choi, J.Y., S.K. Kim, J.C. Kim and S.J. Kwon. 2020. Habitat preferences and trophic position of Brachydiplax chalybea flavovittata Ris, 1911 (Insecta: Odonata) larvae in Youngsan?River wetlands of South Korea. Insects 11(5): 273. https://doi.org/10.3390/insects11050273 

  8. Chung, H.Y., C.M. Yeom, J.H. Kim, S.Y. Park, Y.W. Lee, G.A.?Pyo and S.H. Kim. 2020. Species diversity and community?characteristics of benthic macroinvertebrates from irrigation?ponds in the western CCZ area, Korea. Korean Journal of?Ecology and Environment 53(2): 173-184. 

  9. Cooper, M.J., D.G. Uzarski, T.M. Burton and R.R. Rediske. 2006.?Macroinvertebrate community composition relative to?chemical/physical variables, land use and cover, and vegetation types within a Lake Michigan drowned river mouth?wetland. Aquatic Ecosystem Health and Management 9:?463-479. 

  10. Cummins, K.W. 1962. An evaluation of some techniques for the?collection and analysis of benthic samples with special emphasis on lotic waters. The American Midland Naturalist?67(2): 477-504. 

  11. Dalu, T., R.N. Cuthbert, M.J. Methi, F. Dondofema, L.D. Chari and?R.J. Wasserman. 2022. Drivers of aquatic macroinvertebrate?communities in a Ramsar declared wetland system. Science?of The Total Environment 818: 151683. https://doi.org/10.1016/j.scitotenv.2021.151683 

  12. Davis, J., P. Horwitz, R. Norris, B. Chessman, M. McGuire and?B. Sommer. 2006. Are river bioassessment methods using?macroinvertebrataes applicable to wetlands? Hydrobiologia?572: 115-128. 

  13. Diaz, R.J., M. Solan and R.M. Valente. 2004. A review of approaches for classifying benthic habitats and evaluating habitat?quality. Journal of Environmental Management 73: 165-181. 

  14. Dufrene, M. and P. Legendre. 1997. Species assemblages and indicator species: the need for a flexible asymmetrical approach.?Ecological Monograph 67: 345-366. 

  15. FNM. 2021. Butterflies of Jeju Island. Forklore & Natural Museum?Jeju Special Self-Governing Province. Jeju, Korea. 

  16. Gleason, J.E., J.Y. Bortolotti and R.C. Rooney. 2018. Wetland?microhabitats support distinct communities of aquatic macroinvertebrates. Journal of Freshwater Ecology 33: 73-82. 

  17. Hall, D.L., M.R. Willig, D.L. Moorhead, R.W. Sites, E.B. Fish,?and T.R. Mollhagen. 2004. Aquatic macroinvertebrate diversity of playa wetlands: the role of landscape and island biogeographic characteristics. Wetlands 24: 77-91. 

  18. Han, J.S., C.H. An, J.C. Lim, K.J. Cho and H.G. Lee. 2022.?Analysis of benthic macroinvertebratae fauna and habitat?environment of Muljangori-oreum wetland in Jeju Island.?Korean Journal of Environmental Biology 40(4): 363-373. 

  19. Han, S.P., I.C. Hwang and S.J. Kwon. 2021. Studies on distribution?and ecology of Clithon retropictus(Martens, 1879) in South?Korea. Journal of Wetlands Research 23(4): 317-326. 

  20. Heino, J. 2000. Lentic macroinvertebrate assemblage structure?along gradients in spatial heterogeneity, habitat size and?water chemistry. Hydrobiologia 418: 229-242. 

  21. Hong, S.J. and S.W. Cheong. 2020. A study on the community?characteristics and changes of benthic macroinvertebrates?in the conservation area of the Shinbulsan wetland. Journal?of Environmental Science International 29: 1079-1088. 

  22. Jeong, J.Y., M.K. Sang, J.E. Park, D.K. Song, C.E. Hong, Y.T.?Kim, H.J. Sin, H.J. Hwang, S.M. Jung, S.Y. Park, S.W.?Kang, J.S. Lee, Y.S. Han, H.S. Park, Y.S. Lee and W.J. Kim.?2021. Molecular phylogenetic study of Clithon retropictus?using metallothionein gene. Korean Journal of Malacology?37(2): 69-74. 

  23. Jeong, S.B., D.S. Kim, H.S. Jeon, K.S. Yang and W.T. Kim. 2010a.?Species richness of aquatic insects in wetlands along the?altitudinal gradient in Jeju, Korea: test of Rapoport's rule.?Korean Journal of Applied Entomology 49: 175-185. 

  24. Jeong, S.B., H.S. Oh, H.S. Jeon, K.S. Yang and W.T. Kim. 2010b.?Aquatic insects fauna and characteristics of distribution on?Jeju Island wetlands. Journal of Wetlands Research 12(2):35-46. 

  25. Jiang, X.M., J. Xiong, J.W. Qiu, J.M. Wu, J.W. Wang and Z.C.?Xie. 2010. Structure of macroinvertebrate communities in?relation to environmental variables in a subtropical Asian?river system. International Review of Hydrobiology 95: 42-57. 

  26. JRMA. 2011. Regional Climate Change Report. Jeju Regional?Meteorological Administration. Jeju, Korea. 

  27. Jun, Y.C., D.H. Won, S.H. Lee, D.S. Kong and S.J. Hwang. 2012.?A multimetric benthic macroinvertebrate index for the?assessment of stream biotic integrity in Korea. International?Journal of Environmental Research and Public Health 9: 3599-3628. 

  28. Jun, Y.C., N.Y. Kim, S.H. Kim, Y.S. Park, D.S. Kong and S.J.?Hwang. 2016. Spatial distribution of benthic macroinvertebrate assemblages in relation to environmental variables in?Korean nationwide streams. Water 8: 27. https://doi.org/10.3390/w8010027 

  29. Jung, K.S. 2016. A distributional study and pictorial key of the?Odonata (Insecta) from Korea. Ph D. dissertation, Andong?University. 185pp. 

  30. Jung, M.H., H.J. Cho, J.H. Yun and H.Y. Lee. 2014. Epilithic diatom communities in streams of Jeju Island. Korean Journal?of Environmental Biology 32: 16-25. 

  31. Jung, S.W., Y.J. Park, S.A. Ham, M.C. Kim, H.S. Oh and Y.J.?Bae. 2011. Diversity and species composition of benthic?macroinvertebrates in Jeju Island. Entomological Research?Bulletin 27: 59-69. 

  32. Kang, D.H., E.Y. Yim and M.O. Moon. 2015. Flora of aquatic and?wetland habitats on Jeju Island. Korean Journal of Plant?Taxonomy 45(1): 96-107. 

  33. Kashian, D.R. and T.M. Burton. 2000. A comparison of macroinvertebrates of two Great Lakes coastal wetlands: testing potential metrics for an index of ecological integrity. Journal?of Great Lakes Research 26: 460-481. 

  34. Kim, T., J. Jeong, S. Moon, H. Yang and B. Yang. 2013. Introduction to national mid-term fundamental plan for wetlands?conservation and management. Journal of Wetlands Research 15: 519-527. 

  35. Kingsford, R.T., A. Basset and L. Jackson. 2016. Wetlands: conservation's poor cousins. Aquatic Conservation: Marine?and Freshwater Ecosystems 26: 892-916. 

  36. Lawton, J.H., M. MacGarvin and P.A. Heads. 1987. Effects of?altitude on the abundance and species richness of insect?herbivores on bracken. Journal of Animal Ecology 56: 147-160. 

  37. Lee, S.D., M.J. Kim and J.S. Kim. 2018. Ecological characteristic of Clithon retropictus inhabitating in Yeoncho River in?southern coastal area. Korean Journal of Environment and?Ecology 32(6): 591-602. 

  38. Maltchik, L., C. Stenert, C.B. Kotzian and M.M. Pires. 2010. Responses of odonate communities to environmental factors?in southern Brazil wetlands. Journal of the Kansas Entomological Society 83: 208-220. 

  39. Margalef, R. 1958. Temporal succession and spatial heterogeneity?in phytoplankton. pp. 323-349. In: Perspectives in Marine?Biology (Buzzati-Traverso, A.A. ed.). University of California Press, Berkeley. 

  40. McCune, B. and J.B. Grace. 2002. Analysis of ecological communities. MjM Software Design, Gleneden Beach, Oregon,?USA. 

  41. McCune, B. and M.J. Mefford. 1999. PC-ORD. Multivariate?Analysis of Ecological Data, Vers. 4. User's Guide. MjM?Software Design, Gleneden Beach, Oregon, USA. 

  42. McNaughton, S.J. 1967. Relationships among functional properties of California Grassland. Nature 216: 168-169. 

  43. Mereta, S.T., P. Boets, A.A. Bayih, A. Malu, Z. Ephrem, A. Sisay,?H. Endale, M. Yitbarek, A. Jemal, L. De Meester and P.L.M.?Goethals. 2012. Analysis of environmental factors determining the abundance and diversity of macroinvertebrate?taxa in natural wetlands of southwest Ethiopia. Ecological?Informatics 7: 52-61. 

  44. Merz, J.R. and L.K. Ochikubo Chan. 2005. Effects of gravel augmentation on macroinvertebrate assemblages in a regulated?California river. River Research and Applications 21: 61-74. 

  45. Mielke, P.W., Jr., K.J. Berry and E.S. Johnson. 1976. Multiresponse permutation procedures for a priori classifications.?Communications in Statistics A5: 1409-1424. 

  46. Min, J.K., H. Lee and D. Kong. 2022. Development of a benthic?macroinvertebrate predictive model based on the physical?and chemical variables of rivers in the Republic of Korea.?Jouranl of Freshwater Ecology 37: 425-453. 

  47. MOE. 2019. The distribution map of Clithon retropictum (Martens, 1879). - Kyeongnam Region: Changwon, Goseong,?Sacheon, Tongyoung and Geoje -. The Ministry of Environment. Sejong, Korea. 34pp. 

  48. MOE. 2022. Designation Status of Wetland Protection Area in?Korea (December 2022). http://www.me.go.kr. The Ministry of Environment.(accessed 06/30/2023). 

  49. MOE/NIER. 2008. Intensive Survey on the Wetland Protected?Areas. The Ministry of Environment/National Institute of?Environmental Research. Incheon, Korea. pp. 129-139. 

  50. MOE/NIER. 2021. Stream/River Ecosystem Survey and Health?Assessment. - Youngsan River and Seomjin River -. The?Ministry of Environment/National Institute of Environmental Research. Incheon, Korea. 

  51. Nelson, S.M. and D.M. Lieberman. 2002. The influence of flow?and other environmental factors on benthic invertebrates in?the Sacramento River, USA. Hydrobiologia 489: 117-129. 

  52. NIE. 2020. Survey Guidelines For Inland Wetlands. National Institute of Ecology, Changnyeong, Korea. 

  53. NIE. 2022. Basic Survey on Inland Wetlands('22). National Institute of Ecology, Seocheon, Korea. 

  54. Noseworthy, R.G., H.J. Lee and K.S. Choi. 2013. The occurrence?of Clithon retropictus(v. Martens, 1879) (Gastropoda: Neritidae) in an unusual habitat, northern Jeju Island, Republic?of Korea. Ocean Science Journal 48(3): 259-262. 

  55. Noseworthy, R.G., M.R. Mondol, S.J. Ju and K.S. Choi. 2012. The?occurrence of Clithon retropictus (von Martens in Kobelt,?1879, Gastropoda: Neritidae) in Jeju Island, Republic of?Korea. Korean Journal of Malacology 28(2): 81-90. 

  56. Oertli, B., D.A. Joye, E. Castella, R. Juge, D. Cambin and J.?Lachavanne. 2002. Does size matter? The relationship between pond area and biodiversity. Biological Conservation?104: 59-70. 

  57. Oh, S.J., K.L. Zhin and S.C. Koh. 2009. Studies on flora of wetlands on Jeju City for application as nature exploration sites.?Journal of the Environmental Sciences 18(4): 411-422. 

  58. Park, S.H., J.H. Kim, S.H. Baek, H.S. Choi, D.W. Kim, E.J. Ko?and H.W. Kim. 2020. Characteristics of fish assemblage?by reservoir size in Yeongsan.Seomjin River watershed in?Korea. Korean Journal of Ecology and Environment 53:?229-240. 

  59. Petersen, W.T. and J.E. Keister. 2003. Interannual variability in?copepod community composition at a coastal station in the?northern California Current: a multivariate approach. Deep?Sea Research 50: 2499-2519. 

  60. Pielou, E.C. 1975. Ecological diversity. John Wiley and Sons,?New York. 

  61. Reis, V., V. Hermoso, S.K. Hamilton, D. Ward, E. Fluet-Chouinard, B. Lehner and S. Linke. 2017. A global assessment?of inland wetland conservation status. BioScience 67: 523-533. 

  62. Rolon, A.S. and L. Maltchik. 2006. Environmental factors as predictors of aquatic macrophyte richness and composition in?wetlands of southern Brazil. Hydrobiologia 556: 221-231. 

  63. Rosenberg, D.M. and V.H. Resh. 1993. Freshwater Biomonitoring and Benthic Macroinvertebrates. Chapman and Hall,?London and New York. 

  64. Sanders, N.J. 2002. Elevational gradients in ant species richness:?area, geometry, and Rapoport's rule. Ecography 25: 25-32. 

  65. Shannon, C.E. and W. Weaver. 1949. The mathematical theory of?communication. University of Illinois Press, Urbana. 

  66. Sharma, R.C. and J.S. Rawat. 2009. Monitoring of aquatic macroinvertebrates as bioindicator for assessing the health of wetlands: a case study in the Central Hymalayas, India. Ecological Indicators 9: 118-128. 

  67. Shine, C. and C. de Klemm. 1999. Wetlands, Water and the Law:?Using Law ti Advance Wetland Conservation and Wise?Use. IUCN, Gland. 

  68. Son, J.K., N.C. Kim, M.H. Kim and B.H. Kang. 2012. Community?characteristics of benthic macroinvertebrates according to?growth environment at rural palustrine wetland. Journal of?the Korean Society of Environmental Restoration Technology?15(5): 129-144. 

  69. Stenert, C. and L. Maltchik. 2007. Influence of area, altitude and?hydroperiod on macroinvertebrate communities in southern?Brazil wetlands. Marine and Freshwater Research 58: 993-1001. 

  70. Stenert, C., R.C. Bacca, C.C. Mostardeiro and L. Maltchik. 2008.?Environmental predictors of macroinvertebrate communities in coastal wetlands of southern Brazil. Marine and?Freshwater Research 59: 540-548. 

  71. Stewart, N.A. and T.A. Schriever. 2023. Local environmental conditions influence species replacement in Great Lakes interdunal wetland macroinvertebrate communities. Freshwater?Biology 68: 46-60. 

  72. Tonn, W.M. and J.J. Magnuson. 1982. Patterns in the species?composition and richness of fish assemblages in northern?Wisconsin lakes. Ecology 63: 1149-1166. 

  73. Van den Berg, M.S., H. Coops, R. Noordhuis, J. van Schie and J.?Simons. 1997. Macroinvertebrate communities in relation?to submerged vegetation in two Chara-dominated lakes.?Hydrobiologia 342/343: 143-150. 

  74. Vannote, R.L., G.W. Minshall, K.W. Cummins, J.R. Sedell and?C.E. Cushing. 1980. The river continuum concept. Canadian Journal of Fisheries and Aquatic Sciences 37: 130-137. 

  75. Wallace, J.B. and J.R. Webster. 1996. The role of macroinvertebrates in stream ecosystem function. Annual Review of?Entomology 41: 115-139. 

  76. Weisberg, S.B., J.A. Ranasinghe, D.D. Dauer, L.C. Schnaffer, R.J.?Diaz and J.B. Frithsen. 1997. An estuarine benthic index of?biotic integrity (B-IBI) for Chesapeake Bay. Estuaries 20:?149-158. 

  77. Williams, D.D. and B.W. Feltmate. 1992. Aquatic Insects. CAB?International, Wallingford, Oxon, UK. 

관련 콘텐츠

오픈액세스(OA) 유형

GOLD

오픈액세스 학술지에 출판된 논문

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로